简体中文

Scientists have successfully miniaturized erbium-based erbium lasers on silicon nitride photonic chips

201
2024-06-13 15:59:01
查看翻译

Scientists from the Federal Institute of Technology in Lausanne (EPFL) have successfully miniaturized a powerful erbium-based erbium laser on silicon nitride photonic chips. Due to the large volume and difficulty in shrinking of typical erbium-based fiber lasers, this breakthrough is expected to make significant progress in optical communication and sensing technology.

Since the 1960s, lasers have completely changed the world and are now indispensable in modern applications, from cutting-edge surgery and precision manufacturing to fiber optic data transmission.

It can also scale down optical technologies in various other applications, such as LiDAR, microwave photonics, optical frequency synthesis, and free space communication.

"The application fields of this new type of erbium-doped integrated laser are almost unlimited."
EDWATEC SA, a subsidiary of the laboratory, is an integrated device manufacturer that now offers devices based on rare earth ion doped photonic integrated circuits, including high-performance amplifiers and lasers.
Filters allow for dynamic tuning of laser wavelengths over a wide range, making them versatile and suitable for various applications. This design supports stable single-mode lasers, with an inherent narrow linewidth of only 50 Hz.

It also allows for significant side mode suppression - the laser can emit light at a single, consistent frequency while minimizing the intensity of other frequencies ("side modes"). This ensures a "clean" and stable output for high-precision applications throughout the entire spectrum.

Power, accuracy, stability, low noise
The output power of chip level erbium-based fiber laser exceeds 10 mW, with a side mode suppression ratio greater than 70 dB, and its performance is superior to many traditional systems.

It also has a very narrow linewidth, which means that the light it emits is very pure and stable, which is crucial for coherent applications such as sensing, gyroscopes, LiDAR, and optical frequency measurement.

The micro ring based vernier filter provides wide wavelength tunability for 40 nm lasers in the C-band and L-band (wavelength range used in telecommunications), surpassing traditional fiber lasers in tuning and low spectral stray indicators ("stray" is an unnecessary frequency) while maintaining compatibility with current semiconductor manufacturing processes.

Next generation laser
Miniaturizing and integrating erbium fiber lasers into chip level devices can reduce their overall cost, making them suitable for portable and highly integrated systems in telecommunications, medical diagnostics, and consumer electronics.

Now, scientists led by Dr. Liu Yang and Professor Tobias Kippenberg from the Federal Institute of Technology in Lausanne have established the first ever chip integrated erbium-doped waveguide laser. The performance of this laser is close to that of fiber based lasers, combining wide wavelength tunability with the practicality of chip level photon integration. This breakthrough was published in the journal Nature Photonics.

But as the demand for laser based applications continues to grow, the challenges also increase. For example, the market for fiber lasers is growing and is currently used in industrial cutting, welding, and marking applications.

Fiber lasers use fibers doped with rare earth elements (erbium, ytterbium, neodymium, etc.) as their optical gain source (the part that produces the laser). They emit high-quality beams of light, have high power output, are efficient, low maintenance, durable, and typically smaller than gas lasers. Fiber lasers are also the gold standard for low phase noise, which means their beams will remain stable over time.

However, despite this, the demand for miniaturization of chip level fiber lasers continues to grow. Erbium based fiber lasers are particularly interesting because they meet all the requirements for maintaining high coherence and stability of the laser. However, miniaturizing them poses challenges in maintaining their performance on a small scale.

Building chip level lasers
Researchers have developed their chip level erbium laser using state-of-the-art manufacturing techniques. They first built a one meter on-chip optical cavity (a set of mirrors that provide optical feedback) based on ultra-low loss silicon nitride photonic integrated circuits.

"Although the chip size is compact, we are able to design the laser cavity in meter lengths thanks to the integration of these micro ring resonators, which effectively expand the optical path without the need for physical amplification equipment," said Dr. Liu.

Then, the team implanted high concentrations of erbium ions into the circuit to selectively generate the active gain medium required for the laser. Finally, they integrated citcuit with III-V semiconductor pumped lasers to excite erbium ions, enabling them to emit light and generate laser beams.

In order to improve the performance of the laser and achieve precise wavelength control, researchers have designed an innovative cavity design with a micro ring based cursor filter, which is a filter that can select specific frequency light.

Source: Laser Net

相关推荐
  • SILICON AUSTRIA LABS and EV GROUP Strengthen Cooperation in Optical Technology Research

    EV Group, a leading supplier of wafer bonding and lithography equipment for the MEMS, nanotechnology, and semiconductor markets, and Silicon Austria Labs, a leading electronic systems research center in Austria, announced that SAL has received and installed multiple EVG lithography and photoresist processing systems in its MicroFab at the R&D cleanroom facility in Filach, Austria.These devices...

    2023-11-15
    查看翻译
  • Fraunhofer ISE develops a faster laser system for wafer processing

    By using a new type of laser, the processing speed of wafers can be 10 to 20 times faster than before. This is the result of a research project at the Fraunhofer Institute for Solar Systems in Germany.Researchers have developed a prototype that can use ultraviolet waves to carve the most intricate structures on silicon wafers. The new system concept enables solar cell manufacturers to perform lase...

    2023-12-23
    查看翻译
  • CinIonic launches a new cinema screen specifically designed for laser theaters

    CinIonic announced the launch of a new cinema screen specifically designed for laser auditoriums. CinIonic Laser Screen 2.4 amplifies the power of laser projection by optimizing efficiency and enhancing screen presentation. This new screen is aimed at becoming the ideal companion for CinIonic Laser and is the first screen product in the CinIonic All Laser Solution portfolio.The CinIonic laser scre...

    2023-09-20
    查看翻译
  • RAISE3D launches its innovative 3D printer series and filament series

    3D printer manufacturer Raise3D has launched a new Fused Manufacturing (FFF) 3D printer series called Pro3 HS and a supercore filament series.The Pro3 HS series is equipped with a motion control system, which improves speed, accuracy, and simplifies the manufacturing of large composite components. Raise3D's Hyper Core filament has a dense fiber core and well arranged carbon fibers, which can enha...

    2024-06-11
    查看翻译
  • Progress in the Application of China University of Science and Technology's Femtosecond Laser Processing Technology in the Biomedical Field

    Recently, Associate Professor Li Jiawen's research group at the Micro and Nano Engineering Laboratory of the School of Engineering Science, University of Science and Technology of China proposed a femtosecond laser dynamic holographic processing method suitable for efficient construction of three-dimensional capillary scaffolds, which is used to generate a three-dimensional capillary network. This...

    2024-02-11
    查看翻译